3D Bioprinting and Nanotechnology in Tissue Engineering and Regenerative Medicine
Editat de Lijie Grace Zhang, Kam Leong, John P. Fisheren Limba Engleză Hardback – 6 ian 2015
The increasing availability and decreasing costs of nanotechnologies and 3D printing technologies are driving their use to meet medical needs, and this book provides an overview of these technologies and their integration. It shows how nanotechnology can increase the clinical efficiency of prosthesis or artificial tissues made by bioprinting or biofabrication. Students and professionals will receive a balanced assessment of relevant technology with theoretical foundation, while still learning about the newest printing techniques.
- Includes clinical applications, regulatory hurdles, and risk-benefit analysis of each technology.
- This book will assist you in selecting the best materials and identifying the right parameters for printing, plus incorporate cells and biologically active agents into a printed structure
- Learn the advantages of integrating 3D printing and nanotechnology in order to improve the safety of your nano-scale materials for biomedical applications
Toate formatele și edițiile | Preț | Express |
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Hardback (2) | 650.95 lei 5-7 săpt. | |
ELSEVIER SCIENCE – 6 ian 2015 | 650.95 lei 5-7 săpt. | |
ELSEVIER SCIENCE – 18 feb 2022 | 850.76 lei 5-7 săpt. |
Preț: 650.95 lei
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Specificații
ISBN-13: 9780128005477
ISBN-10: 0128005475
Pagini: 392
Dimensiuni: 191 x 235 x 30 mm
Greutate: 0.95 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128005475
Pagini: 392
Dimensiuni: 191 x 235 x 30 mm
Greutate: 0.95 kg
Editura: ELSEVIER SCIENCE
Public țintă
Engineers, academics, students, clinicians and professionals in biomedical engineering, medical devices, tissue engineering, and biomaterials.Cuprins
PrefacePart I: Basic Principles:Chapter 1: Nanotechnology: A toolkit for cell behaviourChapter 2: 3D Bioprinting and nanomanufacturingChapter 3: 3D Bioprinting techniques Chapter 4: The Power of CAD/CAM Laser Bioprinting at the Single Cell Level: Evolution of PrintingChapter 5: Engineering 2D and 3D cellular microenvironments using laser direct-write
Part II: Applications: Nanotechnology and 3D Bioprinting for Tissue/Organ RegenerationChapter 6: Biomaterials for BioprintingChapter 7: Blood vessel regeneration Chapter 8: Vascular tissueChapter 9: Craniofacial/ dental tissueChapter 10: Craniofacial BoneChapter 11: Additive manufacturing for bone load bearing applications Chapter 12: 3D printing for cartilage Chapter 13: Bioprinting for Skin Chapter 14: 3D Printing and Nanotechnology for Neural Tissue Regeneration Chapter 15: Organ PrintingChapter 16: 3D Bioprinting, Nanotechnology and Intellectual Property
Part II: Applications: Nanotechnology and 3D Bioprinting for Tissue/Organ RegenerationChapter 6: Biomaterials for BioprintingChapter 7: Blood vessel regeneration Chapter 8: Vascular tissueChapter 9: Craniofacial/ dental tissueChapter 10: Craniofacial BoneChapter 11: Additive manufacturing for bone load bearing applications Chapter 12: 3D printing for cartilage Chapter 13: Bioprinting for Skin Chapter 14: 3D Printing and Nanotechnology for Neural Tissue Regeneration Chapter 15: Organ PrintingChapter 16: 3D Bioprinting, Nanotechnology and Intellectual Property